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A Methodology for Modelling of Steady State Flow in Pelton Turbine Injectors

机译:佩尔顿涡轮喷射器中稳态流建模的方法论

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Pelton turbine is a high head-impulse type turbine. The high-speed jet strikes the symmetrical semi ellipsoidal buckets, thus transferring the momentum within short period of time, impulse. The conversion of potential energy of water to kinetic energy in the form of jet is done by a nozzle with internally fitted spear or needle, the assembly in known as injector. The jet quality includes but is not limited to jet velocity, velocity distribution ‘velocity profile’, core location etc. In this study, the modeling of flow in Pelton turbine injector is done by commercial Computational Fluid Dynamics (CFD) solver on a three-dimensional flow domain. The results obtained from CFD modelling are then compared against the experimental observations and previously published literatures. The jet streamline, jet velocity profile and jet core location are then studied. As observed experimentally, the mean jet diameter reduces as the nozzle opening decreases. In addition, like the experimental observations, the jet first contracts and then expands. The diameter of the contraction is then normalized with nozzle exit diameter and is plotted for both experimental observations as well as the results of the numerical simulation. The maximum error between experimental and numerical analysis of jet contraction is 20%. The jet core is located at region axially ahead of needle tip.
机译:佩尔顿涡轮机是一种高头脉冲式涡轮机。高速喷射撞击对称的半椭圆形桶,从而在短时间内传递动量,脉冲。射流形式的水势能转换为射流形式的动能由喷嘴与内部安装的矛或针,该组件被称为注射器。喷射质量包括但不限于喷射速度,速度分布的速度曲线',核心位置等。在本研究中,佩尔顿涡轮喷射器的流动建模是通过商业计算流体动力学(CFD)求解器在三 - 尺寸流动域。然后将从CFD建模获得的结果与实验观察和先前公开的文献进行比较。然后研究喷射流线,喷射速度曲线和喷射核心位置。如实验所知,随着喷嘴开口减小,平均喷射直径减少。另外,像实验观察一样,喷射第一收缩,然后膨胀。然后用喷嘴出口直径归一化收缩的直径,并绘制了实验观察结果以及数值模拟的结果。喷气收缩的实验性和数值分析之间的最大误差为20%。喷射芯位于针尖轴向前方的区域。

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